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首页> 外文期刊>Food Hydrocolloids >Nanoemulsion-based delivery systems for poorly water-soluble bioactive compounds: Influence of formulation parameters on polymethoxyflavone crystallization
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Nanoemulsion-based delivery systems for poorly water-soluble bioactive compounds: Influence of formulation parameters on polymethoxyflavone crystallization

机译:水溶性差的生物活性化合物的基于纳米乳液的输送系统:配方参数对聚甲氧基黄酮结晶的影响

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摘要

Polymethoxyflavones (PMFs) extracted from citrus peel exhibit potent anti-cancer activity, but are highly hydrophobic molecules with poor solubility in both water and oil at ambient and body temperature, which limits their bioavailability. The possibility of encapsulating PMFs within nanoemulsion-based delivery systems to facilitate their application in nutraceutical and pharmaceutical products was investigated. The influence of oil type (corn oii, MCT, orange oil), emulsifier type (β-lactoglobuiin, lyso-lecithin, Tween, and DTAB), and neutral cosolvents (glycerol and ethanol) on the formation and stability of PMF-loaded nanoemulsions was examined. Nanoemulsions (r < 100 nm) could be formed using high pressure homogenization for all emulsifier types, except DTAB. Lipid droplet charge could be altered from highly cationic (DTAB), to near neutral (Tween), to highly anionic (β-lactoglobulin, lyso-iedthin) by varying emulsifier type. PMF crystals formed in all nanoemulsions after preparation, which had a tendency to sediment during storage. The size, morphology, and aggregation of PMF crystals depended on preparation method, emulsifier type, oil type, and cosolvent addition. These results have important implications for the development of delivery systems for bioactive components that have poor oil and water solubility at application temperatures.
机译:从柑桔皮中提取的聚甲氧基黄酮(PMF)表现出强大的抗癌活性,但它们是高度疏水的分子,在环境温度和人体温度下在水和油中的溶解性均较差,这限制了它们的生物利用度。研究了将PMF封装在基于纳米乳剂的输送系统中以促进其在营养食品和药品中的应用的可能性。油类型(玉米油,MCT,橙油),乳化剂类型(β-乳球蛋白,溶血卵磷脂,吐温和DTAB)和中性助溶剂(甘油和乙醇)对加载PMF的纳米乳状液的形成和稳定性的影响被检查了。对于除DTAB以外的所有类型的乳化剂,可以使用高压均质法形成纳米乳(r <100 nm)。通过改变乳化剂类型,可以将脂质液滴的电荷从高阳离子(DTAB)变为近中性(Tween),再变为高阴离子(β-乳球蛋白,溶血艾丹)。制备后,PMF晶体在所有纳米乳剂中形成,在储存过程中倾向于沉淀。 PMF晶体的大小,形态和聚集取决于制备方法,乳化剂类型,油类类型和助溶剂的添加。这些结果对于开发在应用温度下油和水溶解度较差的生物活性成分的输送系统具有重要意义。

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